Interaction between alpha- and beta-adrenergic receptor agonists modulating the slow Ca2+-activated K+ current I-AHP in hippocampal neurons

被引:36
作者
Pedarzani, P [1 ]
Storm, JF [1 ]
机构
[1] UNIV OSLO,INST NEUROPHYSIOL,N-0317 OSLO,NORWAY
关键词
rat; isoproterenol; 6-fluoro-noradrenaline; cAMP; PKA;
D O I
10.1111/j.1460-9568.1996.tb00731.x
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Noradrenaline inhibits the Ca2+-activated K+ current I-AHP, which underlies the slow afterhyperpolarization and spike frequency adaptation in hippocampal and neocortical neurons. The resulting increase in excitability probably contributes to the state control of the forebrain during arousal and attention. The modulation of I-AHP by noradrenaline has previously been shown to be mediated by beta(1) receptors, cyclic AMP and protein kinase A, but not by alpha receptors. We have now tested the possibility that alpha receptors also contribute to I-AHP modulation through interaction with beta receptors, by the use of whole-cell recordings in CA1 pyramidal cells of rat hippocampal slices. The alpha-receptor agonist 6-fluoro-noradrenaline strongly potentiated the effect of isoproterenol on I-AHP. The synergistic effect of 6-fluoro-noradrenaline and isoproterenol was blocked by the beta-receptor antagonist timolol, but the receptor type mediating the effect of 6-fluoro-noradrenaline could not be unequivocally identified by using alpha-receptor antagonists. The effect of high concentrations of noradrenaline on I-AHP was only partly blocked by the beta-receptor antagonist timolol, and was further reduced by blocking alpha receptors, again suggesting a contribution from alpha receptors. In contrast, the effect of low concentrations of noradrenaline seemed to be potentiated by the alpha-receptor antagonist phentolamine in 57% of the cells, suggesting concentration-dependent antagonistic interaction between alpha and beta receptors. Further tests indicated that the cross-talk between 6-fluoro-noradrenaline and isoproterenol occurs upstream from cyclic AMP production, and that protein kinase A serves as a final common path for the modulation of I-AHP by noradrenaline, and by the combination of 6-fluoro-noradrenaline and isoproterenol.
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页码:2098 / 2110
页数:13
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